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Optimal rate adaptation in the scalable extension of H.264/AVC with combined scalability

机译:H.264 / AVC的可扩展扩展与组合可扩展性中的最佳速率自适应

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Adaptation for scalable video coding is one of the recent challenges in video distribution over modern networks, which are heterogeneous both in terms of available bandwidth and user end terminal capability. In case of SNR/spatial combined scalability an interesting issue concerns how to remove data from different spatial resolutions for the adaptation to different rates. Scalable Video Coding offers the possibility to adapt the content following the “quality layer” abstraction. In this work we present a new method to optimally define quality layers for a scalable bitstream in a combined scalability scenario using Integer Linear Programming and distortion models. The performances of the proposed approach are comparable with the state-of-the-art methods, but they are obtained with a significant complexity reduction and augmented flexibility.
机译:对于可伸缩视频编码的适应是现代网络上视频分发中的最新挑战之一,在可用带宽和用户终端能力方面这两者都是异构的。在SNR /空间组合可伸缩性的情况下,一个有趣的问题涉及如何从不同的空间分辨率中删除数据以适应不同的速率。可伸缩视频编码提供了根据“质量层”抽象来适应内容的可能性。在这项工作中,我们提出了一种新的方法,该方法使用整数线性规划和失真模型在组合可伸缩性方案中为可伸缩比特流最佳地定义质量层。所提出的方法的性能可与最新方法相媲美,但获得的结果却显着降低了复杂性并提高了灵活性。

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